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◆ Nature Communications2025-11-24· Prussian blue

A layered Prussian blue analogue as fast-charging negative electrode material for lithium-ion batteries

Chongwei Gao, Ming Chen, Jiantao Li, Sungsik Lee, Tian Sun, Xunan Wang, Shuhua Zhang, Guang Feng, Dengyun Zhai, Feiyu Kang

原始摘要(英文原文)· Original abstract
The simultaneous achievement of fast-charging and high specific capacity remains a critical challenge for lithium-ion battery negative electrodes. Here we report a layered manganese-based Prussian blue analogue, synthesized through vacancy control and subsequent thermal transformation. As a conversion-type negative electrode, this material exhibits high-rate performance, delivering a specific capacity of 510 mAh g−1 at a specific current of 8 A g−1, and operates at a moderate average voltage of approximately 1.2 V vs. Li/Li+, which mitigates lithium plating risks. This high-rate capability stems from the analogue’s specific linkage configurations, which facilitate a high content of active transition metal and strong Li+ adsorption at nitrogen sites. The high transition metal content enables a high reversible capacity, while strong Li+ adsorption promotes an efficient initial crystalline-to-amorphous transformation. This process induces dynamically reversible component migration during subsequent cycling, thereby enhancing conversion reaction kinetics. Our findings provide insights into the application of Prussian blue analogues as fast-charging negative electrode materials. The development of fast-charging and high-capacity negative electrodes is critical for advanced lithium-ion batteries. Here, authors use a vacancy engineering strategy to develop a layered Prussian blue analogue with competitive rate capability, delivering a specific capacity of 510 mAh g−1 at a specific current of 8 A g−1.
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A layered Prussian blue analogue as fast-charging negative electrode material for lithium-ion batteries — 科研速览 Science Skim